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at various points in a subcritical model reactor operating at near-zero power and driven by an external high-intensity, high-reliability neutron source; 2) Extending the previous results to a power ADS loaded
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organisms (bacteria, viruses, and eukaryotes). The unit currently consists of 12 teams and comprises approximately 120 people, nearly half of whom are permanent researchers, as well as more than 30 doctoral
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Postdoctoral position (M/F) on impedance and dielectric study of solid/solid interfaces in batteries
impedance spectroscopy (BDS & EIS) are classical approaches for battery electrode characterization. Actually, BDS & EIS are one of the most practical analysis techniques, which can discriminate charge carrier
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the reduced dimensionality and anisotropic bonding environment,potentially, enhancing the density of states near specific energy ranges. Despite its promising electronic properties, InTe has received limited
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, which focuses each annular portion of the near-field at a different longitudinal position, with a controlled radial delay introduced via spatiotemporal couplings (STC). Experimentally, these STC can be
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associated to the most stable interfaces (magnetization, magnetic anisotropy), - Calculate the magnetic order associated to the modulated exchange parameters, - Calculate the orbital torques as a function of
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are inaccessible without appropriate climbing equipment, raising questions about their accessibility during past periods of human use. The Baume Brune site features rock walls rich in morphogenetic
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of the Université Paris Cité. Bringing together more than 500 people, the IPGP studies the Earth and the planets from the core to the most superficial fluid envelopes, through observation, experimentation and
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was born in 2020 from the merger of five units (CSNSM, IMNC, IPN, LAL, LPT). The staff is made up of nearly 560 permanent (340 engineers, technicians and administrators and 220 researchers and teacher
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for Nanoscience & Nanotechnology, has developed a strong expertise in harnessing light-matter interaction at the most fundamental level. We develop crucial resources for optical quantum technologies, including high